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Périmètre et Aire

Mathematics • 60 • 20 students • Created with AI following Aligned with provincial curriculum standards

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Mathematics
60
20 students
18 March 2026

Teaching Instructions

This is lesson 13 of 15 in the unit "Mesurer avec le Système Métrique". Lesson Title: Calculer le Périmètre et l'Aire: Application Pratique Lesson Description: Les élèves appliqueront leurs connaissances pour calculer le périmètre et l'aire de formes dans des projets de groupe.

Overview

Grade: 5
Duration: 60 minutes
Class Size: 20 students
Unit: Mesurer avec le Système Métrique (Unit 13 of 15)
Topic: Calculer le périmètre et l’aire : Application pratique
Curriculum Reference:

  • Mathematics, Grade 4-6, Ontario Curriculum (2023), Measurement Strand
  • Specific Expectations:
    • MA4MD4: Calculate the perimeter and area of rectangles and other polygons by decomposing shapes as required
    • MA4MD3: Estimate, measure, and record perimeter and area, using appropriate metric units
    • MA4MD1: Solve problems involving measurement of perimeter and area

Learning Goals

By the end of this lesson, students will be able to:

  • Apply their understanding of perimeter and area calculations to real-world shapes and projects
  • Collaborate effectively in groups to solve measurement problems
  • Use metric units (cm, m, m²) accurately and convert when necessary
  • Demonstrate fluency with formulas for perimeter and area of various polygonal shapes
  • Communicate their mathematical reasoning orally and in writing

Materials Needed

  • Graph paper (20 sheets, one per student)
  • Rulers (20 pieces, metric system)
  • Large construction paper (A3 size) for group projects
  • Scissors and coloured markers
  • Calculators (optional, to support computation)
  • Whiteboard or chart paper
  • Printed worksheet with various polygons (rectangles, composite shapes) for guided practice

Lesson Breakdown

1. Introduction & Review (10 minutes)

  • Begin by writing “Périmètre et Aire” on the board.
  • Briefly review the formulas for perimeter and area of rectangles and polygons (P = sum of all side lengths; A = length × width for rectangles; decomposition strategies for irregular shapes).
  • Ask probing questions:
    • “Comment peut-on mesurer le périmètre d’une forme irrégulière?”
    • “Pourquoi est-il important de comprendre l’aire dans des situations réelles?”
  • Use a quick visual: draw a rectangle and an irregular shape on the board, model how to calculate both perimeter and area.

2. Group Application Project (35 minutes)

Context: Students will apply their learning by creating a “plan” for a small “jardin” or “terrain de jeu” using graph paper and coloured markers.

Step 1: Group formation (4 groups of 5 students)

  • Each group designs a irregular polygon using graph paper sheets taped together on an A3 sheet.
  • Encourage creativity: include different shapes such as rectangles, triangles, squares combined.

Step 2: Design challenge (10 minutes)

  • Groups sketch their shape to scale, marking all known sides (in cm).
  • Assign different metric units to groups (e.g., one group works in cm, another in metres – reinforce unit conversions).

Step 3: Calculate perimeter and area (15 minutes)

  • Students calculate the perimeter by adding side lengths.
  • For area, groups decompose their shape into rectangles and triangles, then sum areas.
  • Students record all calculations, showing their reasoning and units clearly.

Step 4: Prepare presentation (6 minutes)

  • Groups prepare a short explanation (2-3 minutes) about how they calculated the perimeter and area, challenges they faced, and real-life applications.

3. Group Presentations & Class Discussion (10 minutes)

  • Each group shares their findings.
  • Discuss how decomposition helps with irregular shapes.
  • Reinforce the importance of accuracy with units.
  • Teacher provides formative feedback addressing math language, accuracy, and group collaboration.

4. Conclusion and Exit Ticket (5 minutes)

  • Exit ticket: Each student solves one quick perimeter or area problem independently (e.g., “Calcule l’aire d’un rectangle de 6 m sur 4 m”).
  • Collect exit tickets to informally assess individual understanding before next lesson.

Differentiation Strategies

  • For advanced learners: Challenge to include calculation of area for triangles using the formula (base × height ÷ 2).
  • For learners needing support: Provide step-by-step worksheets with guided questions and partially completed examples.
  • Peer tutors: Use stronger students to support peers in groups during calculations.

Assessment and Evaluation

  • Formative: Observation during group work, accuracy of calculations, oral explanations during presentations, and exit ticket responses.
  • Success Criteria:
    • Correct use of metric units in context
    • Accurate calculation of perimeter and area, including decomposed shapes
    • Clear mathematical communication orally and in writing
  • Next steps: Use collected data to plan review or extension activities in Lesson 14.

Connections to the Ontario Curriculum (2023)

  • Mathematics – Measurement Strand

    • Students solve problems involving perimeter and area (MA4MD1).
    • They use appropriate units of measurement, including conversions (MA4MD3).
    • Apply strategies to calculate area and perimeter of polygons by decomposing shapes (MA4MD4).
  • Mathematical Process Expectations

    • Reasoning & Proving: Justify their solution strategies during presentations.
    • Reflecting: Evaluate different approaches to decomposing shapes.
    • Communicating: Use precise mathematical language and symbols.

Teacher Reflection Notes (to enhance future delivery)

  • Consider incorporating technology, such as digital applets or interactive whiteboard activities, to simulate decomposition of shapes.
  • Extend the project by integrating cross-curricular links with Science (e.g., measurement in land use or biology).
  • Explore opportunities for experiential learning outdoors with actual perimeter and area measurement of classroom courtyard or playground.

This engaging, hands-on lesson promotes critical thinking, collaboration, and real-world math application while rigorously aligning with the Ontario Curriculum and Grade 5 developmental expectations.

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